subject
Physics, 14.02.2020 04:29 mikey200059

It is not possible to see very small objects, such as viruses, using an ordinary light microscope. An electron microscope can view such objects using an electron beam instead of a light beam. Electron microscopy has proved invaluable for investigations of viruses, cell membranes and subcellular structures, bacterial surfaces, visual receptors, chloroplasts, and the contractile properties of muscles. The "lenses" of an electron microscope consist of electric and magnetic fields that control the electron beam.

As an example of the manipulation of an electron beam, consider an electron traveling away from the origin along the x axis in the xy plane with initial velocity vi hat bold = vii hat bold. As it passes through the region x = 0 to x = d, the electron experiences acceleration a = axi hat bold + ayj hat bold, where ax and ay are constants. For the case vi = 1.90 ? 107 m/s, ax = 8.57 ? 1014 m/s2, and ay = 1.47 ? 1015 m/s2, determine the following, at x = d = 0.0100 m.
(a) the position of the electron
yf = m
(b) the velocity of the electron
vf = m/s i hat bold + m/s j hat bold
(c) the speed of the electron
|vf| = m/s
(d) the direction of travel of the electron (i. e. the angle between its velocity and the x axis)
? =

ansver
Answers: 2

Another question on Physics

question
Physics, 22.06.2019 00:30
There are weak or strong attractive forces between atoms of liquids with a high viscosity
Answers: 3
question
Physics, 22.06.2019 15:00
Sodium chloride, nacl, is formed when a sodium atom transfers its electron to a chlorine atom. the difference in charge between the two atoms creates a(n) attraction that bonds them together.
Answers: 1
question
Physics, 22.06.2019 17:30
Frequency of electromagnetic waves that a radio station is assigned is called
Answers: 1
question
Physics, 22.06.2019 22:30
Materials will have different energies associated with the electrons inside them. this is related to how strongly bound they are by their work function. if we sandwich a material with a very low energy between two materials with a high energy, we create a trap for an electron. if this trap is very narrow in one direction in comparison to the others, this is approximately a 1-dimensional box that confines the electron. what is the lowest energy of an electron in the box if the thinnest direction across the materials is 4.81 nm?
Answers: 3
You know the right answer?
It is not possible to see very small objects, such as viruses, using an ordinary light microscope. A...
Questions
question
Mathematics, 05.04.2021 16:40
question
Mathematics, 05.04.2021 16:50
question
Mathematics, 05.04.2021 16:50
question
Computers and Technology, 05.04.2021 16:50
question
Computers and Technology, 05.04.2021 16:50